Project Grant R43AI172667
- This Project Grant award from the National Institute of General Medical Sciences (NIGMS) under CFDA 93.859 Biomedical Research and Research Training program provides funding of $258,586 to MSTM LLC to develop an advanced surface sampling and ionization technology for remote detection of molecular compositions. The goal is to demonstrate the feasibility and proof-of-concept of a "Surface Reader" device that can directly sample surfaces using a liquid meniscus or indirectly via laser...
- This $255,706 National Science Foundation SBIR Phase I Project Grant to Metfora LLC supports the development of a novel multiplexed metabolite diagnostic blood test for early detection of chronic diseases. The NSF Technology, Innovation, and Partnerships program aims to advance science and engineering solutions to national challenges through innovation and partnerships. Specifically, Metfora will use mass spectrometry and artificial intelligence to analyze specific panels of circulating...
- This National Science Foundation Project Grant of $255,261 awarded under the NSF Technology, Innovation, and Partnerships program (CFDA 47.084) will fund the development of optimized extraction and projection optics for ion point sources. Steam Instruments Inc. will demonstrate technology advances in imaging mass spectrometry through this Small Business Innovation Research Phase I project. Specifically, the company aims to markedly improve mass resolving power to separate key mass...
- This Project Grant from the National Science Foundation's Technology, Innovation, and Partnerships program totaling $256,000 will fund the development of an optimized ion mobility spectrometry system for distributed chemical sensing without the use of radioactive ionization sources. The awardee, Sensit Ventures Inc. of Davis, California, will establish an experimental and theoretical framework to miniaturize differential mobility spectrometry technology for analytical-quality chemical...
- This National Science Foundation Technology, Innovation, and Partnerships Project Grant of $256,000 will support the development of a novel mass spectrometer by Moires Instruments, LLC to identify molecular isomers and distinguish their conformational forms. The instrument uses high electric fields to manipulate neutral molecules based on their dipole moments, separating them by mass-to-dipole-moment ratio rather than conventional mass-to-charge ratio. This approach aims to reduce the...
- This Project Grant award from the National Institute of General Medical Sciences (NIGMS) under CFDA 93.859 Biomedical Research and Research Training program provides $306,860 to Mixedlcmedia LLC, a small disadvantaged business, to develop and evaluate a prototype ultra-low flow liquid chromatography platform based on their proprietary porous layer open-tubular (PLOT) and monolithic nanocolumn technologies. The goal is to create a commercialization-ready LC system that enables deep proteomic...
- The National Science Foundation awarded Ionicscale LLC $256,000 under the Technology, Innovation, and Partnerships federal grant program to develop low-cost, portable mass spectrometers based on a chip-scale ion trap mass analyzer. The award aims to advance the company's technology for ubiquitous, high-specificity chemical analysis through a novel ion trap geometry that can be microfabricated at lower costs. This has the potential to bring mass spectrometry capabilities, which are currently...
- This National Science Foundation (NSF) Cooperative Agreement award, funded under the NSF Technology, Innovation, and Partnerships (CFDA 47.084) program, supports the development of a novel, miniaturized ion trap mass spectrometer technology by Ionicscale LLC, a small technology company. The $1,000,000 project aims to create an ultra-compact, remotely programmable chemical analyzer that can greatly expand the accessibility and affordability of mass spectrometry-based chemical detection and...
- This National Science Foundation (NSF) Small Business Innovation Research (SBIR) Phase I award to RT Microdx Inc. provides $274,362 to develop a novel molecular diagnostic platform for detecting respiratory diseases like strep throat. The platform aims to provide laboratory-quality accuracy for at-home use by non-healthcare professionals. Key technical objectives include optimizing the sensitivity of the platform's pH-sensitive polymer detection mechanism and ensuring robust performance at...
- This Project Grant award of $316,250 from the National Institute of General Medical Sciences (NIGMS), under the Biomedical Research and Research Training program (CFDA 93.859), is to support the development of a novel solid-state nanopore array chip technology by Molariti Inc. in Cambridge, MA. The goal is to create a breakthrough in nanopore fabrication that can enable highly sensitive, high-throughput, and quantitative biomolecule analysis for applications such as early disease detection,...
DEVELOPMENT OF MULTIMODE VACUUM IONIZATION FOR USE IN MEDICAL DIAGNOSTICS - THERE IS A CRITICAL NEED FOR RAPID AND COST-EFFECTIVE MEANS FOR THE DETECTION OF E.G. INFECTIOUS DISEASES AT AN EARLY STAGE, DRUG OVERDOSES, AND OTHER HEALTH RELATED TESTING NECESSITIES. THUS, SIGNIFICANT COMMERCIAL OPPORTUNITIES EXIST BECAUSE OF THE LACK OF THESE CAPABILITIES AS PAINFULLY "DEMONSTRATED" IN THE CURRENT PANDEMIC. MASS SPECTROMETRY (MS), BECAUSE OF ITS ABILITY TO DETECT HUNDREDS, EVEN THOUSANDS, OF BIOLOGICAL COMPOUNDS IN A SINGLE ACQUISITION PROVIDES THE CAPABILITY TO DISTINGUISH CHEMICAL DIFFERENCES ASSOCIATED WITH, E.G., DIFFERENT PATHOGENS AND DISEASE STATES, AS WELL AS TARGET SPECIFIC COMPOUNDS IN BODILY FLUIDS. CURRENT MS APPROACHES USE IONIZATION METHODS REQUIRING USER EXPERTISE AND FREQUENTLY SPECIALIZED INSTRUMENTATION, WHICH SIGNIFICANTLY INCREASES COST. OVER THE PAST 30 YEARS, MASS SPECTROMETERS HAVE UNDERGONE A RENAISSANCE IN THEIR COST-TO-CAPABILITY RATIO. FOR MORE WIDESPREAD APPLICATIONS OF MS IN ADVANCING HEALTHCARE, THERE IS A NEED FOR NEW ADVANCED ION SOURCE TECHNOLOGY THAT PROVIDES FOR MINIMAL USER INTERVENTION AND LONG-TERM USE WITHOUT MAINTENANCE. THESE ATTRIBUTES ARE NECESSARY IF TESTING OF THOUSANDS OF INDIVIDUALS DAILY PER INSTRUMENT TO E.G., IDENTIFY, TRACK, AND CONTAIN THE SPREAD OF INFECTIOUS DISEASES IS TO BE IMPLEMENTED USING MS IN THE FUTURE. THE GOAL OF THIS NIH SBIR PHASE I PROJECT IS TO DEMONSTRATE THAT AN ENTIRELY NEW ION SOURCE CONCEPT CONSTITUTES A DISRUPTIVE TECHNOLOGY AND EFFECTIVE METHOD THAT CAN BE USED FOR THE NEXT-GENERATION DISEASE TEST MEASUREMENTS. THE BASIC INVENTION OF THIS PROPOSAL IS COVERED BY A MSTM PATENT APPLICATION (#20210343518, MARCH 31, 2021), AND EARLIER IP EXCLUSIVELY LICENSED TO MSTM WHICH CAN BE APPLIED TO WIDELY AVAILABLE ATMOSPHERIC PRESSURE IONIZATION MASS SPECTROMETERS, INCLUDING PORTABLE AND ULTRA-HIGH PERFORMANCE. CRITICAL ADVANTAGES INCLUDE EXCEPTIONAL EASE OF USE, ROBUSTNESS TO INSTRUMENT CONTAMINATION AND CARRYOVER, HIGH-THROUGHPUT, LOW COST, AND THE CAPABILITY TO RETROFIT WITH MOST COMMERCIAL MASS SPECTROMETERS TO PROVIDE RAPID, SENSITIVE, AND ACCURATE DATA ON DEMAND. THE OBJECTIVE OF THIS PHASE I PROJECT IS TO DEMONSTRATE THE FEASIBILITY OF THIS TECHNOLOGY BY CONSTRUCTING A MANUAL DUAL VACUUM IONIZATION SOURCE THAT CAN BE AUTOMATED IN PHASE II FOR NEARLY HANDS-FREE OPERATION AND DISEASE IDENTIFICATION THROUGH MACHINE LEARNING ALGORITHMS. THE SPECIFIC AIMS TOWARDS ESTABLISHING A POTENTIALLY DISRUPTIVE HEALTHCARE TECHNOLOGY: AIM 1: CONSTRUCT A MANUAL VMAI/MALDI SOURCE CAPABLE OF FUTURE AUTOMATION (MINIMAL VIABLE PRODUCT). AIM 2: DEMONSTRATE HIGH SENSITIVITY, REPRODUCIBILITY, ROBUSTNESS, SPEED OF ANALYSIS, AS WELL AS EASE OF USE, QUANTIFICATION, ACCURATE MASS, MS/MS, AND FINGERPRINT ANALYSES OF PATHOGENS. MSTM HAS THE NECESSARY EXPERTISE AND FACILITIES TO BRING THIS PHASE I PROJECT TO A SUCCESSFUL CONCLUSION WITHIN 9 MONTHS. OUR STRATEGY IS TO COLLABORATE WITH ONE OR MORE EQUIPMENT MANUFACTURER WHICH IS NECESSARY TO EFFECTIVELY EXPAND INTO THE HEALTHCARE MARKET (LETTERS BRUKER, MEDTRONIC, THERMO, WATERS).
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 5/1/25 | ||
| Not listed | $159.1k | 3/10/23 |